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Enhancement of coercivity of Nd-Fe-B ultrafine powders comparable to single domain size by grain boundary diffusion process

机译:晶界扩散过程的ND-Fe-B超细粉末的矫顽力增强

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Nd-Fe-B sintered magnets are widely used in many applications. However, for the use in motors for hybrid electric vehicles (HEV), the development of Dy-free or Dy-lean Nd-Fe-B sintered magnets with high coercivity is desirable. Decreasing grain size of the NdFeB phase is an established method for increasing coercivity of Nd-Fe-B sintered magnets. We decreased the size of jet-milled powder to around 1 mm by helium (He) jet-milling in Dy-free Nd-Fe-B sintered magnets and obtained high coercivity (μ H) of 2 T with (BH) of around 400 kJm. We also succeeded further decrease in the size to 0.3 μm by combining hydrogenation-disproportionation-desorption-recombination (HDDR), hydrogen decrepitation (HD) and He jet-milling. However, the effect of annealing on magnetic properties of the ultrafine powders was not clear. On the other hand, the grain boundary diffusion (GBD) process is well known as an effective method for the enhancement of coercivity. However, the effect for the ultrafine powders has not been investigated. Therefore, in this investigation, we investigated the effects of annealing and GBD process on coercivity of the Nd-Fe-B ultrafine jet-milled powders prepared by our developed process which combined HDDR, HD and He jet-milling.
机译:ND-Fe-B烧结磁铁广泛用于许多应用中。然而,对于用于混合动力电动车辆(HEV)的电机,希望具有高矫顽力的无动或Dy-Send Nd-Fe-B烧结磁体的开发。降低NdFeB相的晶粒尺寸是用于增加ND-Fe-B烧结磁体的矫顽力的建立方法。我们通过氦气(HE)在无油的Nd-Fe-B烧结磁体中喷射液体磨削粉末的尺寸为约1mm,并获得高矫顽力(μH),其中(BH)约为400 KJM。通过组合氢化 - 歧化 - 解吸重组(HDDR),氢气缩回(HD)和喷射研磨,我们也成功地将大小的大小降低至0.3μm。然而,退火对超细粉末磁性的影响尚不清楚。另一方面,晶界扩散(GBD)过程是众所周知的一种用于增强矫顽力的有效方法。但是,尚未研究超细粉末的效果。因此,在该研究中,我们研究了通过我们开发方法制备的Nd-Fe-B超细喷射研磨粉末的退火和GBD方法对由HDDR,HD和HE喷射铣削的矫顽腐蚀的影响。

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